使用 androcoll-p 的单层离心法可进行放大,以处理更大量的公猪精液。

ISRN veterinary science Pub Date : 2010-11-29 Print Date: 2011-01-01 DOI:10.5402/2011/548385
Marjet van Wienen, Anders Johannisson, Margareta Wallgren, Joyce Parlevliet, Jane M Morrell
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引用次数: 0

摘要

这项研究的目的是扩大通过 Androcoll(TM)-P 进行单层离心(SLC)的程序,作为处理整个射精的第一步。第一项实验比较了使用 4.5 毫升和 15 毫升扩展射精(SLC-4.5 和 SLC-15)的单层离心法,通过客观的运动分析、形态、活力和活性氧(ROS)的产生来评估精子质量。在第二项实验中,SLC-4.5 与 25 mL 加长射精单层离心法(SLC-25)通过运动分析和形态学进行了比较。在这两项实验中,SLC 选择的样本的正常形态和线性运动能力明显高于未离心的对照组(P < .001),而总运动能力和膜完整性则没有变化。虽然经 SLC 选择的样本中 ROS 生成量高于对照组(P < .01),但这可能是由于后者的精浆中存在抗氧化剂。总之,SLC-4.5和SLC-15样本之间、SLC-4.5和SLC-25样本之间的精子质量没有差异,表明SLC方法可以成功放大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Single layer centrifugation with androcoll-p can be scaled-up to process larger volumes of boar semen.

Single layer centrifugation with androcoll-p can be scaled-up to process larger volumes of boar semen.

Single layer centrifugation with androcoll-p can be scaled-up to process larger volumes of boar semen.

Single layer centrifugation with androcoll-p can be scaled-up to process larger volumes of boar semen.

The objective of this study was to scale-up the procedure for Single Layer Centrifugation (SLC) through Androcoll(TM)-P, as a preliminary step towords processing the whole ejaculate. The first experiment compared Single Layer Centrifugation using 4.5 mL and 15 mL extended ejaculate (SLC-4.5 and SLC-15, resp.), assessing sperm quality by objective motility analysis, morphology, viability, and the production of reactive oxygen species (ROS). In the second experiment, SLC-4.5 was compared to Single Layer Centrifugation with 25 mL extended ejaculate (SLC-25) using motility analysis and morphology. In both experiments, normal morphology and linear motility were significantly higher in the SLC-selected samples than in the uncentrifuged controls (P < .001), whereas total motility and membrane integrity were unchanged. Although ROS production was higher in the SLC-selected samples than in the controls (P < .01), this might have been due to the presence of antioxidants in seminal plasma in the latter. In conclusion, there was no difference in sperm quality between SLC-4.5 and SLC-15 samples, or between SLC-4.5 and SLC-25 samples, indicating that the SLC method can be scaled-up successfully.

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